Casimir-Polder interaction between an atom and a small magnetodielectric sphere
arXiv:0907.2654 · doi:10.1103/PhysRevA.81.012509
Abstract
On the basis of macroscopic quantum electrodynamics and point-scattering techniques, we derive a closed expression for the Casimir-Polder force between a ground-state atom and a small magnetodielectric sphere in an arbitrary environment. In order to allow for the presence of both bodies and media, local-field corrections are taken into account. Our results are compared with the known van der Waals force between two ground-state atoms. To continuously interpolate between the two extreme cases of a single atom and a macroscopic sphere, we also derive the force between an atom and a sphere of variable radius that is embedded in an Onsager local-field cavity. Numerical examples illustrate the theory.
9 pages, 4 figures, minor additions
References in corpus (10)
- Van-der-Waals potentials of paramagnetic atoms
- Dispersive interactions between atoms and non planar surfaces
- The van der Waals energy of atomic systems near absorbing and dispersing bodies
- Local-field correction to the spontaneous decay rate of atoms embedded in bodies of finite size
- Local-field correction to one- and two-atom van der Waals interactions
- Born expansion of the Casimir-Polder interaction of a ground-state atom with dielectric bodies
- Stable suspension and dispersion-induced transitions from repulsive Casimir forces between fluid-separated eccentric cylinders
- Macroscopic quantum electrodynamics and duality
- Dispersion forces and duality
- Dispersive interaction between an atom and a conducting sphere
Cited by in corpus (7)
- Effective Polarisability Models
- Temperature-independent Casimir-Polder forces in arbitrary geometries
- Image method in the calculation of the van der Waals force between an atom and a conducting surface
- Impact of effective polarisability models on the predicted release dynamics of CH and CO from premelted ice
- Effects of van der Waals forces and salt ions on the growth of water films on ice and the detachment of CO bubbles
- Casimir-Polder energy level shifts of an out-of-equilibrium particle near a microsphere
- Novel approaches to tailor and tune light-matter interactions at the nanoscale